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纳汉特病毒集,251 种海洋弧菌类病毒的特征。

Viruses of the Nahant Collection, characterization of 251 marine Vibrionaceae viruses.

机构信息

Department of Civil and Environmental Engineering, Massachusetts Institute of Technology, Cambridge, MA 02141 USA.

Department of Systems and Computational Biology, Albert Einstein College of Medicine, Bronx, NY 10461 USA.

出版信息

Sci Data. 2018 Jul 3;5:180114. doi: 10.1038/sdata.2018.114.

Abstract

Viruses are highly discriminating in their interactions with host cells and are thought to play a major role in maintaining diversity of environmental microbes. However, large-scale ecological and genomic studies of co-occurring virus-host pairs, required to characterize the mechanistic and genomic foundations of virus-host interactions, are lacking. Here, we present the largest dataset of cultivated and sequenced co-occurring virus-host pairs that captures ecologically representative fine-scale diversity. Using the ubiquitous and ecologically diverse marine Vibrionaceae as a host platform, we isolate and sequence 251 dsDNA viruses and their hosts from three time points within a 93-day time-series study. The virus collection includes representatives of the three Caudovirales tailed virus morphotypes, a novel family of nontailed viruses, and the smallest (10,046 bp) and largest (348,911 bp) Vibrio virus genomes described. We provide general characterization and annotation of the viruses and describe read-mapping protocols to standardize genome presentation. The rich ecological and genomic contextualization of hosts and viruses make the Nahant Collection a unique platform for high-resolution studies of environmental virus-host infection networks.

摘要

病毒在与宿主细胞的相互作用中具有高度的选择性,被认为在维持环境微生物多样性方面发挥着重要作用。然而,缺乏大规模的生态和基因组研究来描述病毒-宿主相互作用的机制和基因组基础,这些研究需要同时研究共存的病毒-宿主对。在这里,我们展示了最大的培养和测序共存病毒-宿主对数据集,该数据集捕捉到了具有生态代表性的精细尺度多样性。我们利用普遍存在且具有生态多样性的海洋弧菌科作为宿主平台,从为期 93 天的时间序列研究中的三个时间点中分离和测序了 251 种 dsDNA 病毒及其宿主。该病毒集包括三种有尾噬菌体形态的代表、一种新的无尾病毒家族以及描述的最小(10046bp)和最大(348911bp)的弧菌病毒基因组。我们对病毒进行了一般特征描述和注释,并描述了读取映射协议以标准化基因组呈现。宿主和病毒的丰富生态和基因组背景使 Nahant 集合成为研究环境病毒-宿主感染网络的独特平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6f89/6029569/7768101ae50c/sdata2018114-f1.jpg

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